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[Sequential combined liver-kidney transplantation for a one-year-old boy with infantile primary hyperoxaluria type 1]
Yaeko Motoyoshil1, Motoshi Hattori, Hiroko Chikamoto
1Department of Pediatric Nephrology, Kidney Center, Tokyo Women's Medical University, Tokyo, Japan.
Insights
Infantile primary hyperoxaluria type 1 (PH1) requires early diagnosis and sequential liver-kidney transplantation. Careful monitoring and hydration are crucial post-transplant to manage high oxalate levels.
Area of Science:
- Nephrology
- Pediatric Gastroenterology
- Transplantation Medicine
Background:
- Infantile primary hyperoxaluria type 1 (PH1) is a rare genetic disorder leading to severe kidney damage.
- Early diagnosis and intervention are critical for managing PH1 in infants.
Observation:
- A one-year-old male diagnosed with PH1 presented with growth delay and chronic renal failure.
- The patient underwent sequential liver and kidney transplantation.
- Post-transplant, serum oxalate levels remained elevated, necessitating high-dose hydration.
Findings:
- Sequential liver-kidney transplantation improved the patient's overall health and growth.
- Despite successful transplantation, persistent high serum and urine oxalate levels require ongoing management.
- Adequate hydration is essential to prevent calcium oxalate crystal deposition in the graft.
Implications:
- Early diagnosis and timely combined liver-kidney transplantation are vital for treating infantile PH1.
- Long-term monitoring of oxalate levels and aggressive hydration are necessary after transplantation.
- Multidisciplinary care and family cooperation are essential for optimal patient outcomes.
Abstract:
We present the case of a one-year-old male patient with infantile primary hyperoxaluria type 1 (PH1). The patient visited hospital because of growth delay and poor feeding when he was six months old, and was diagnosed as PH1 with chronic renal failure. He underwent peritoneal dialysis until receiving a living-related liver transplantation when he was seventeen months old, and after the operation, underwent hemodialysis or hemodiafiltration four times per week. Six months after the liver transplantation, his serum oxalate level decreased to around 20 micromol/l and a living-related kidney transplantation was successfully performed. Nine months have passed since the kidney transplantation, and the patient's liver and kidney functions have been good and his growth and development much better than before the sequential liver and kidney transplantation. However, his serum and urine oxalate levels remained high and he has required high dose hydration to prevent deposition of calcium oxalate crystals in his grafted kidney. The key-points for treating infantile PHI patients are summarized as follows; 1) make a precise diagnosis as soon as possible, 2) perform a combined liver-kidney transplantation successfully, 3) conduct careful monitoring of the serum and urine oxalate levels and continue adequate hydration after kidney transplantation until the serum and urine oxalate levels normalize. Furthermore, cooperation between the medical staff and the patient's family seems to be essential.
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